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首页> 外文期刊>Journal of cellular and molecular medicine. >Identification of differentially expressed genes by single‐cell transcriptional profiling of umbilical cord and synovial fluid mesenchymal stem cells
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Identification of differentially expressed genes by single‐cell transcriptional profiling of umbilical cord and synovial fluid mesenchymal stem cells

机译:通过脐带和滑膜液间充质干细胞的单细胞转录谱鉴定差异表达基因

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The purpose of this study was to measure the heterogeneity in human umbilical cord–derived mesenchymal stem cells (hUC‐MSCs) and human synovial fluid–derived mesenchymal stem cells (hSF‐MSCs) by single‐cell RNA‐sequencing (scRNA‐seq). Using Chromium? technology, scRNA‐seq was performed on hUC‐MSCs and hSF‐MSCs from samples that passed our quality control checks. In order to identify subgroups and activated pathways, several bioinformatics tools were used to analyse the transcriptomic profiles, including clustering, principle components analysis (PCA), t‐Distributed Stochastic Neighbor Embedding (t‐SNE), gene set enrichment analysis, as well as Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses. scRNA‐seq was performed on the two sample sets. In total, there were 104?761?163 reads for the hUC‐MSCs and 6?577?715 for the hSF‐MSCs, with 60% mapping rate. Based on PCA and t‐SNE analyses, we identified 11 subsets within hUC‐MSCs and seven subsets within hSF‐MSCs. Gene set enrichment analysis determined that there were 533, 57, 32, 44, 10, 319, 731, 1037, 90, 25 and 230 differentially expressed genes (DEGs) in the 11 subsets of hUC‐MSCs and 204, 577, 30, 577, 16, 57 and 35 DEGs in the seven subsets of hSF‐MSCs. scRNA‐seq was not only able to identify subpopulations of hUC‐MSCs and hSF‐MSCs within the sample sets, but also provided a digital transcript count of hUC‐MSCs and hSF‐MSCs within a single patient. scRNA‐seq analysis may elucidate some of the biological?characteristics of MSCs and allow for a better understanding of the multi‐directional?differentiation, immunomodulatory properties and tissue repair capabilities of MSCs.
机译:本研究的目的是通过单细胞RNA测序来测量人脐带衍生的间充质干细胞(HUC-MSCs)和人类滑膜衍生的间充质干细胞(HSF-MSC)的异质性(ScRNA-SEQ) 。使用铬?技术,SCRNA-SEQ是在通过通过质量控制检查的样本的HUC-MSCS和HSF-MSC上进行的。为了鉴定亚组和活性途径,使用几种生物信息学工具来分析转录组谱,包括聚类,原理分析分析(PCA),T分布式随机邻居嵌入(T-SNE),基因设定富集分析,以及基因本体(GO)和京都基因组(KEGG)分析分析。 SCRNA-SEQ在两个样本集上进行。总共有104个?761?163读HUC-MSC和HSF-MSC的6?577?715,具有> 60%的映射率。基于PCA和T-SNE分析,我们在HUC-MSCS和HSF-MSCS中的七个子集中识别了11个子集。基因设定富集分析确定HUC-MSCs和204,577,30的11个亚组中有533,57,32,40,10,319,731,1037,90,25和230型差异表达基因(DEG),在HSF-MSCS的七个子集中577,16,57和35°。 ScRNA-SEQ不仅能够在样本集中识别HUC-MSC和HSF-MSC的亚群,而且还提供了在单个患者内的HUC-MSC和HSF-MSC的数字转录数计数。 SCRNA-SEQ分析可以阐明一些生物学?MSC的特征,并允许更好地了解MSCs的多向性,免疫调节性质和组织修复能力。

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